对Trauzl试验爆炸性能理论预测的修正

IF 5 Q1 ENGINEERING, MULTIDISCIPLINARY Defence Technology(防务技术) Pub Date : 2024-06-01 DOI:10.1016/j.dt.2023.08.013
Ivana Dobrilovic, Mario Dobrilovic, Muhamed Suceska
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引用次数: 0

摘要

特劳泽铅块试验通过测量铅块空腔中炸药起爆时产生的体积增大(膨胀),可以确定炸药在爆破应用中的大致性能。在本文中,我们将重新考虑用起爆参数或数量来解释特劳泽尔试验结果的可能性。分析中使用的起爆参数是通过热化学代码 EXPLO5 计算得出的,而水力代码 AUTODYN 则用于模拟炸药密度和反应速率对特劳泽尔试验结果的影响。结果发现,铅块空腔体积的增加与起爆热量和起爆产物体积根值的乘积最相关。水码模拟表明,炸药的密度和炸药的分解率会影响起爆产物和铅块的相互作用动力学,从而影响铅块空腔体积的增加。
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Revisiting the theoretical prediction of the explosive performance found by the Trauzl test

The Trauzl lead block test allows the determination of the approximate performance of explosives in blasting applications by measuring the volume increase (expansion) that is produced by the detonation of an explosive charge in the cavity of a lead block. In this paper, we reconsider the possibility of interpreting the Trauzl test results in terms of detonation parameters or quantities. The detonation parameters used in the analysis are calculated using the thermochemical code EXPLO5, while the hydrocode AUTODYN is used to simulate the effect of explosive charge density and reaction rate on the results of the Trauzl test. The increase in the volume of the lead block cavity was found to correlate best with the product of the detonation heat and the root of the volume of detonation products. Hydrocode simulation showed that the density of explosive charge and the rate of explosive decomposition affect the dynamics of the interaction of the detonation product and the lead block, and consequently the lead block cavity volume increase.

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来源期刊
Defence Technology(防务技术)
Defence Technology(防务技术) Mechanical Engineering, Control and Systems Engineering, Industrial and Manufacturing Engineering
CiteScore
8.70
自引率
0.00%
发文量
728
审稿时长
25 days
期刊介绍: Defence Technology, a peer reviewed journal, is published monthly and aims to become the best international academic exchange platform for the research related to defence technology. It publishes original research papers having direct bearing on defence, with a balanced coverage on analytical, experimental, numerical simulation and applied investigations. It covers various disciplines of science, technology and engineering.
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